MOF/inorganic nanocomposites combine the advantages of each component. Herein, two MOF/metal selenite nanocomposites, Co-NH2-BDC/CoSeO3·H2O and Co-BDC/CoSeO3·H2O, are prepared on nickel foam through a facile two-step hydrothermal method, which inherit the 2D morphology and porosity properties of their MOF precursors. Furthermore, during the electrochemical activation process, the crystallized nanocomposites can easily transform into amorphous structures in a short time of 20 min in the presence of an electric field, similar to CoSeO3·H2O. Due to amorphization, the electrochemical performance of the two nanocomposites is much enhanced relative to that of their MOF precursors. Specifically, the areal capacitances of Co-NH2-BDC/CoSeO3·H2O and ...
ii Abstract Herein we report on the synthesis of MoSe2 nanomaterials using novel colloidal synthet...
The needs for energy storage devices have kindled researchers desire to explore and synthesize nanoc...
In this study, a fast and simple technique (2 min) has been developed to modify the pores of a novel...
In this paper, we developed a sequential chemical etching and selenization processes to synthesize C...
A unique encapsulated asymmetric supercapacitor is implemented with a yet unreported electrode archi...
© 2021 Elsevier. This manuscript version is made available under the CC-BY-NC-ND 4.0 license http://...
Enhanced energy storing capability with the aid of unique nanostructured morphology is beneficial to...
Herein, we offer a new method to prepare Co0.8Fe0.2Se spheres enclosed with nanoparticles (Co0.8Fe0....
Transition metal selenides are widely considered as good electron conductor materials, showing brigh...
Tuning the structural and electronic properties of layered metal selenides is a highly feasible appr...
Supercapacitors (SCs) have received a great deal of attention and play an important role for future ...
Transition metal selenides have received considerable attention as promising candidates for lithium-...
This work successfully demonstrates metal–organic framework (MOF) derived strategy to prepare nanopo...
Flexible supercapacitors (SCs) have been considered next-generation promising high-energy storage sy...
In this study, metal organic frameworks (MOFs) are prepared as a support to tether active selenium t...
ii Abstract Herein we report on the synthesis of MoSe2 nanomaterials using novel colloidal synthet...
The needs for energy storage devices have kindled researchers desire to explore and synthesize nanoc...
In this study, a fast and simple technique (2 min) has been developed to modify the pores of a novel...
In this paper, we developed a sequential chemical etching and selenization processes to synthesize C...
A unique encapsulated asymmetric supercapacitor is implemented with a yet unreported electrode archi...
© 2021 Elsevier. This manuscript version is made available under the CC-BY-NC-ND 4.0 license http://...
Enhanced energy storing capability with the aid of unique nanostructured morphology is beneficial to...
Herein, we offer a new method to prepare Co0.8Fe0.2Se spheres enclosed with nanoparticles (Co0.8Fe0....
Transition metal selenides are widely considered as good electron conductor materials, showing brigh...
Tuning the structural and electronic properties of layered metal selenides is a highly feasible appr...
Supercapacitors (SCs) have received a great deal of attention and play an important role for future ...
Transition metal selenides have received considerable attention as promising candidates for lithium-...
This work successfully demonstrates metal–organic framework (MOF) derived strategy to prepare nanopo...
Flexible supercapacitors (SCs) have been considered next-generation promising high-energy storage sy...
In this study, metal organic frameworks (MOFs) are prepared as a support to tether active selenium t...
ii Abstract Herein we report on the synthesis of MoSe2 nanomaterials using novel colloidal synthet...
The needs for energy storage devices have kindled researchers desire to explore and synthesize nanoc...
In this study, a fast and simple technique (2 min) has been developed to modify the pores of a novel...